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https://github.com/schinken/esp8266-geigercounter.git
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initial commit
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1
.gitignore
vendored
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1
.gitignore
vendored
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wifi.h
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159
GeigerCounter.ino
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159
GeigerCounter.ino
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#include <ESP8266WiFi.h>
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#include <PubSubClient.h>
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#include <SoftwareSerial.h>
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#include <SimpleTimer.h>
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#include "settings.h"
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#include "wifi.h"
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WiFiClient wifiClient;
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PubSubClient mqttClient;
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SoftwareSerial geigerCounterSerial(PIN_UART_RX, PIN_UART_TX);
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SimpleTimer timer;
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String serialInput = "";
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char serialInputHelper[RECV_LINE_SIZE];
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int lastCPM = 0, currentCPM = 0;
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float lastuSv = 0, currentuSv = 0;
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void setup() {
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Serial.begin(115200);
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geigerCounterSerial.begin(BAUD_GEIGERCOUNTER);
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delay(10);
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Serial.print("Connecting to ");
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Serial.println(ssid);
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WiFi.begin(ssid, password);
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while (WiFi.status() != WL_CONNECTED) {
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Serial.print(".");
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delay(500);
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}
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Serial.println("");
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Serial.println("WiFi connected");
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Serial.println("IP address: ");
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Serial.println(WiFi.localIP());
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timer.setInterval(300000, updateRadiationValues);
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}
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void updateRadiationValues() {
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char tmp[8];
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if(currentCPM != lastCPM) {
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String(currentCPM).toCharArray(tmp, 8);
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Serial.print("Sending CPM");
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Serial.println(tmp);
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mqttClient.publish(MQTT_TOPIC_CPM, tmp, true);
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}
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if(currentuSv != lastuSv) {
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String(currentuSv).toCharArray(tmp, 8);
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Serial.print("Sending uSv");
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Serial.println(tmp);
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mqttClient.publish(MQTT_TOPIC_USV, tmp, true);
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}
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lastCPM = currentCPM;
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lastuSv = currentuSv;
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}
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void connectMqtt() {
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bool newConnection = false;
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while (!mqttClient.connected()) {
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mqttClient.setClient(wifiClient);
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mqttClient.setServer(mqttHost, 1883);
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mqttClient.connect("geigercounter", MQTT_TOPIC_LAST_WILL, 1, true, "disconnected");
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delay(1000);
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newConnection = true;
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}
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if(newConnection) {
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mqttClient.publish(MQTT_TOPIC_LAST_WILL, "connected", true);
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}
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}
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void updateMqttTopics(int cpm, float uSv) {
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}
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void parseReceivedLine(char* input) {
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char segment = 0;
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char *token;
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float uSv = 0;
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float cpm = 0;
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token = strtok(input, delimiter);
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while (token != NULL) {
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switch(segment) {
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// This is just for validation
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case IDX_CPS_KEY: if (strcmp(token, "CPS") != 0) return; break;
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case IDX_CPM_KEY: if (strcmp(token, "CPM") != 0) return; break;
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case IDX_uSv_KEY: if (strcmp(token, "uSv/hr") != 0) return; break;
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case IDX_CPM:
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Serial.printf("Current CPM: %s\n", token);
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cpm = String(token).toInt();
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break;
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case IDX_uSv:
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Serial.printf("Current uSv/hr: %s\n", token);
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uSv = String(token).toFloat();
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break;
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}
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if(segment > 7) {
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// Invalid! There should be no more than 7 segments
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return;
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}
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token = strtok(NULL, delimiter);
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segment++;
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}
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currentuSv = uSv;
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currentCPM = cpm;
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}
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void loop() {
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connectMqtt();
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timer.run();
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mqttClient.loop();
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if (geigerCounterSerial.available()) {
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char in = (char) geigerCounterSerial.read();
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serialInput += in;
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if (in == '\n') {
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serialInput.toCharArray(serialInputHelper, RECV_LINE_SIZE);
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parseReceivedLine(serialInputHelper);
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serialInput = "";
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}
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// Just in case the buffer gets to big, start from scratch
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if(serialInput.length() > RECV_LINE_SIZE + 10) {
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serialInput = "";
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}
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Serial.write(in);
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}
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}
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21
settings.h
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21
settings.h
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#define IDX_CPS_KEY 0
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#define IDX_CPM_KEY 2
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#define IDX_uSv_KEY 4
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#define IDX_CPM 3
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#define IDX_uSv 5
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#define IDX_MODE 6
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#define RECV_LINE_SIZE 37
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#define PIN_UART_RX 2 // 4
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#define PIN_UART_TX 13 // UNUSED
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#define BAUD_GEIGERCOUNTER 9600
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#define MQTT_TOPIC_CPM "sensor/radiation/cpm"
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#define MQTT_TOPIC_USV "sensor/radiation/uSv"
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#define MQTT_TOPIC_LAST_WILL "state/sensor/geigercounter"
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const char* mqttHost = "mqtt.core.bckspc.de";
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const char* delimiter = ", ";
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